The role of SLC12A family of cation-chloride cotransporters and drug discovery methodologies

IF 6.1 1区 医学 Q1 PHARMACOLOGY & PHARMACY Journal of Pharmaceutical Analysis Pub Date : 2023-12-01 DOI:10.1016/j.jpha.2023.09.002
Shiyao Zhang , Nur Farah Meor Azlan , Sunday Solomon Josiah , Jing Zhou , Xiaoxia Zhou , Lingjun Jie , Yanhui Zhang , Cuilian Dai , Dong Liang , Peifeng Li , Zhengqiu Li , Zhen Wang , Yun Wang , Ke Ding , Yan Wang , Jinwei Zhang
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Abstract

The solute carrier family 12 (SLC12) of cation-chloride cotransporters (CCCs) comprises potassium chloride cotransporters (KCCs, e.g. KCC1, KCC2, KCC3, and KCC4)-mediated Cl extrusion, and sodium potassium chloride cotransporters (N[K]CCs, NKCC1, NKCC2, and NCC)-mediated Cl loading. The CCCs play vital roles in cell volume regulation and ion homeostasis. Gain-of-function or loss-of-function of these ion transporters can cause diseases in many tissues. In recent years, there have been considerable advances in our understanding of CCCs' control mechanisms in cell volume regulations, with many techniques developed in studying the functions and activities of CCCs. Classic approaches to directly measure CCC activity involve assays that measure the transport of potassium substitutes through the CCCs. These techniques include the ammonium pulse technique, radioactive or nonradioactive rubidium ion uptake-assay, and thallium ion-uptake assay. CCCs' activity can also be indirectly observed by measuring γ-aminobutyric acid (GABA) activity with patch-clamp electrophysiology and intracellular chloride concentration with sensitive microelectrodes, radiotracer 36Cl, and fluorescent dyes. Other techniques include directly looking at kinase regulatory sites phosphorylation, flame photometry, 22Na+ uptake assay, structural biology, molecular modeling, and high-throughput drug screening. This review summarizes the role of CCCs in genetic disorders and cell volume regulation, current methods applied in studying CCCs biology, and compounds developed that directly or indirectly target the CCCs for disease treatments.

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阳离子-氯化物共转运体 SLC12A 家族的作用和药物发现方法
阳离子-氯化物共转运体(CCCs)的溶质载体家族 12(SLC12)由氯化钾共转运体(KCCs,如 KCC1、KCC2、KCC3 和 KCC4)介导的 Cl- 挤压和氯化钾钠共转运体(N[K]CCs,NKCC1、NKCC2 和 NCC)介导的 Cl- 装载组成。CCCs 在细胞容量调节和离子平衡中发挥着重要作用。这些离子转运体的功能增益或缺失可导致许多组织的疾病。近年来,我们对 CCCs 在细胞体积调节中的调控机制的认识有了长足的进步,并开发了许多研究 CCCs 功能和活性的技术。直接测量 CCC 活性的经典方法包括测量通过 CCC 转运钾替代物的试验。这些技术包括铵脉冲技术、放射性或非放射性铷离子吸收测定法和铊离子吸收测定法。通过膜片钳电生理学测量γ-氨基丁酸(GABA)活性,以及使用敏感的微电极、放射性示踪剂 36Cl- 和荧光染料测量细胞内氯离子浓度,也可以间接观察 CCC 的活性。其他技术包括直接观察激酶调控位点磷酸化、火焰光度法、22Na+ 摄取测定、结构生物学、分子建模和高通量药物筛选。本综述概述了 CCCs 在遗传疾病和细胞体积调节中的作用、目前用于研究 CCCs 生物学的方法,以及开发的直接或间接针对 CCCs 治疗疾病的化合物。
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来源期刊
Journal of Pharmaceutical Analysis
Journal of Pharmaceutical Analysis Chemistry-Electrochemistry
CiteScore
16.20
自引率
2.30%
发文量
674
审稿时长
22 weeks
期刊介绍: The Journal of Pharmaceutical Analysis (JPA), established in 2011, serves as the official publication of Xi'an Jiaotong University. JPA is a monthly, peer-reviewed, open-access journal dedicated to disseminating noteworthy original research articles, review papers, short communications, news, research highlights, and editorials in the realm of Pharmacy Analysis. Encompassing a wide spectrum of topics, including Pharmaceutical Analysis, Analytical Techniques and Methods, Pharmacology, Metabolism, Drug Delivery, Cellular Imaging & Analysis, Natural Products, and Biosensing, JPA provides a comprehensive platform for scholarly discourse and innovation in the field.
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